Heterogeneity–diversity relationships differ between and within trophic levels in temperate forests

被引:0
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作者
Lea Heidrich
Soyeon Bae
Shaun Levick
Sebastian Seibold
Wolfgang Weisser
Peter Krzystek
Paul Magdon
Thomas Nauss
Peter Schall
Alla Serebryanyk
Stephan Wöllauer
Christian Ammer
Claus Bässler
Inken Doerfler
Markus Fischer
Martin M. Gossner
Marco Heurich
Torsten Hothorn
Kirsten Jung
Holger Kreft
Ernst-Detlef Schulze
Nadja Simons
Simon Thorn
Jörg Müller
机构
[1] University of Würzburg,Department of Animal Ecology and Tropical Biology
[2] CSIRO Land and Water,Terrestrial Ecology Research Group
[3] Technical University of Munich,Department of Geoinformatics
[4] Munich University of Applied Sciences,Forest Inventory and Remote Sensing, Faculty of Forest Sciences and Forest Ecology
[5] University of Göttingen,Faculty of Geography
[6] Philipps-University Marburg,Silviculture and Forest Ecology of the Temperate Zones, Faculty of Forest Sciences and Forest Ecology
[7] University of Göttingen,Institute for Ecology, Evolution and Diversity, Faculty of Biological Sciences
[8] Bavarian Forest National Park,Institute of Biology and Environmental Science, Vegetation Science & Nature Conservation
[9] Goethe University Frankfurt,Institute of Plant Sciences
[10] University of Oldenburg,Forest Entomology
[11] University of Bern,Chair of Wildlife Ecology and Wildlife Management
[12] Swiss Federal Research Institute WSL,Epidemiology, Biostatistics and Prevention Institute
[13] University of Freiburg,Evolutionary Ecology and Conservation Genomics
[14] University of Zurich,Biodiversity, Macroecology & Biogeography
[15] University Ulm,Centre of Biodiversity and Sustainable Land Use
[16] University of Goettingen,Ecological Networks
[17] University of Goettingen,undefined
[18] Max Planck Institute for Biogeochemistry,undefined
[19] Technical University of Darmstadt,undefined
来源
Nature Ecology & Evolution | 2020年 / 4卷
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摘要
The habitat heterogeneity hypothesis predicts that biodiversity increases with increasing habitat heterogeneity due to greater niche dimensionality. However, recent studies have reported that richness can decrease with high heterogeneity due to stochastic extinctions, creating trade-offs between area and heterogeneity. This suggests that greater complexity in heterogeneity–diversity relationships (HDRs) may exist, with potential for group-specific responses to different facets of heterogeneity that may only be partitioned out by a simultaneous test of HDRs of several species groups and several facets of heterogeneity. Here, we systematically decompose habitat heterogeneity into six major facets on ~500 temperate forest plots across Germany and quantify biodiversity of 12 different species groups, including bats, birds, arthropods, fungi, lichens and plants, representing 2,600 species. Heterogeneity in horizontal and vertical forest structure underpinned most HDRs, followed by plant diversity, deadwood and topographic heterogeneity, but the relative importance varied even within the same trophic level. Among substantial HDRs, 53% increased monotonically, consistent with the classical habitat heterogeneity hypothesis but 21% were hump-shaped, 25% had a monotonically decreasing slope and 1% showed no clear pattern. Overall, we found no evidence of a single generalizable mechanism determining HDR patterns.
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页码:1204 / 1212
页数:8
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